PO.CL01.12 · 临床研究
空间转录组学揭示新辅助osimertinib治疗的EGFR突变型非小细胞肺癌中独特的SPP1-CD44信号网络
Spatial transcriptomics reveals distinct SPP1-CD44 signaling networks in neoadjuvant osimertinib treated EGFR mutant non-small cell lung cancer
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:肺癌是癌症死亡的主要原因,尽管治疗有所改善,肿瘤通常应答不完全并在获得耐药后恢复生长。最近完成的一项新辅助osimertinib II期试验(NCT03433469)治疗可手术切除的I-IIIA期EGFR突变型非小细胞肺癌(EGFRm NSCLC)患者,凸显了进一步识别对靶向治疗持续存在和耐药的非基因组、转录适应性机制的重要性。
方法:我们分析这些患者样本,以识别新辅助osimertinib治疗后残留病灶(RD)相较于未治疗样本(TN)富集的转录调控信号模式。使用10X Genomics Visium平台对来自25例患者的36个组织切片(n=9 TN,n=19 RD,n=4进展性疾病(PD),n=4肿瘤邻近正常组织)进行空间分辨转录组测序。TN和PD样本来自标准治疗的手术切除。19份RD样本中有18份来自NCT03433469。质控后,91,582个阵列点保留用于下游分析。
结果:我们识别出既被具有委员会认证资格的病理学家注释为“癌”又具有肿瘤特征性拷贝数变异的高置信度肿瘤阵列点。我们应用疾病匹配的单细胞RNA测序参考谱对空间转录组数据进行反卷积并估算细胞类型丰度。细胞-细胞信号网络分析识别出在RD状态下巨噬细胞亚型与肿瘤细胞之间显著富集或丰富的SPP1-CD44相互作用。具体而言,PDPN+巨噬细胞被鉴定为SPP1表达的主要来源。额外的差异基因分析识别出在RD肿瘤巢中,SPP1的已知上游和下游基因TM4SF4和SERPINA3分别相较于TN显著上调。SERPINA3先前已被证明正向调节PI3K/AKT信号通路。
结论:巨噬细胞与肿瘤细胞之间通过SPP1-CD44信号的相互作用显著促进了EGFRm靶向治疗诱导的耐受和耐药。未来研究将聚焦于阐明调控TM4SF4/SPP1/SERPINA3轴的调节机制,并使用临床前模型评估其对治疗耐药的贡献及作为治疗靶点的潜力。
查看英文原文 English abstract
Background: Lung cancer is the leading cause of cancer mortality, and despite improvements in treatment, tumors typically respond incompletely and resume growth after acquisition of drug resistance. Recent completion of a neoadjuvant osimertinib Phase II trial treating patients with surgically resectable stage I-IIIA EGFR-mutated non-small cell lung cancer (EGFRm NSCLC) (NCT03433469) has highlighted the importance of further identifying non-genomic, transcriptionally adapted mechanisms of persistence and resistance to targeted therapy.
Methods: We analyzed these patient samples to identify transcriptionally regulated signaling patterns enriched at Residual Disease (RD) after neoadjuvant osimertinib treatment compared to treatment naïve samples (TN. Spatially resolved transcriptomic sequencing was performed, using the 10X Genomics Visium platform, on 36 tissue sections (n=9 TN, n=19 RD, n=4 Progressive Disease (PD), n=4 Tumor Adjacent Normal), from 25 patients. TN and PD samples were from standard-of-care surgical resections. 18 of 19 RD samples were from NCT03433469. After quality control, 91,582 array spots remained for downstream analysis.
Results: We identified high confidence tumor array spots annotated both as “Cancer” by a board-certified pathologist and with tumor characteristic copy number variations. We applied disease-matched single-cell RNA-sequencing reference profiles to deconvolute the spatial transcriptomic data and estimate cell-type abundances. Analysis of cell-cell signaling networks identified significantly enriched or abundant SPP1-CD44 interactions between macrophage subtypes and tumor cells at the RD state. Specifically, PDPN+ Macrophages were identified as a primary source of SPP1 expression. Additional differential gene analysis identified significant upregulation of TM4SF4 and SERPINA3, known genes up and downstream, respectively, of SPP1, in the RD tumor nest, as compared to TN. SERPINA3 has previously been shown to positively regulate PI3K/AKT signaling pathway.
Conclusion: The interaction between macrophages and tumor cells through SPP1-CD44 signaling significantly contributes to EGFRm targeted therapy-induced tolerance and resistance. Future studies will focus on elucidating the regulatory mechanisms governing the TM4SF4/SPP1/SERPINA3 axis and evaluating its contribution to therapy resistance, as well as its potential as a therapeutic target, using preclinical models.
利益披露 Disclosure
W. Tamaki, None..
D. L. Kerr, None..
W. Wu, None..
G. Eilers, None..
A. Urisman, None..
Y. Chou, None..
D. Jablons, None.
T. G. Bivona,
Revolution Medicines Independent Contractor, ).
Verastem ).
Nextpoint ).
Relay Independent Contractor.
EcoR1 Independent Contractor.
Engine Independent Contractor.
Novartis Independent Contractor.
Pfizer Independent Contractor.
AstraZeneca Independent Contractor.
C. M. Blakely,
AstraZeneca ).
Novartis ).
Puma ).
Genentech ).
Verestem ).
ArriVent ).
Janssen Other, Advisory Board Member.
Pfizer Advisory Board Member.
BMS Other, Advisory Board Member.